Literature DB >> 19223607

Frailty and impaired cardiac autonomic control: new insights from principal components aggregation of traditional heart rate variability indices.

Ravi Varadhan1, Paulo H M Chaves, Lewis A Lipsitz, Phyllis K Stein, Jing Tian, B Gwen Windham, Ronald D Berger, Linda P Fried.   

Abstract

BACKGROUND: Age-related deterioration in homeostatic regulatory mechanisms leads to decreased complexity in their output. For example, the degradation of cardiac autonomic control results in loss of complexity in the heart rate signal. Frailty is a state of critically impaired homeostasis that results in heightened vulnerability to stressors. We propose a new measure of heart rate variability (HRV) to capture the impairment in cardiac autonomic control associated with frailty.
METHODS: Traditional time and frequency domain indices of HRV were obtained from 2-hour ambulatory electrocardiograms (ECGs) of 276 women (65-101 years old) in the Women's Health and Aging Study-I. Principal components analysis was conducted on the correlation matrix of HRV indices. Frailty was defined using a validated instrument. Regression models were used to evaluate associations of HRV measures with age, frailty, and 5-year mortality.
RESULTS: The first two principal components (PCs), PC1 and PC2, explained 90% of the variance in HRV indices. PC1 is the mean of log-transformed HRV indices. PC2 is a linear combination of log-transformed indices, with positive weights for very low frequency (VLF), low frequency (LF), and standard deviation of N-N intervals (SDNN), and negative weights for high frequency (HF), root-mean-squared differences of successive N-N intervals (RMSSD), and proportion of all N-N intervals that are larger than 50 ms (pNN50). Decreases in SDNN, VLF, LF, and LF/HF were associated with an increased risk of frailty. PC2 was more strongly associated with age (beta = -.23, p < .001) and frailty (beta = -.73, p < 10(-5)) than were the individual HRV indices and LF/HF. PC2 was also the best predictor of 5-year mortality (beta = -.60, p < 10(-6)).
CONCLUSIONS: Cardiac autonomic control, as reflected by HRV, is impaired in frailty. A new measure derived from PC aggregation of traditional HRV indices provides a compact summary of this impairment.

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Year:  2009        PMID: 19223607      PMCID: PMC2679422          DOI: 10.1093/gerona/glp013

Source DB:  PubMed          Journal:  J Gerontol A Biol Sci Med Sci        ISSN: 1079-5006            Impact factor:   6.053


  19 in total

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Journal:  Circulation       Date:  1998-08-11       Impact factor: 29.690

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  34 in total

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3.  Stress Regulation as a Link between Executive Function and Pre-Frailty in Older Adults.

Authors:  R A Roiland; F Lin; C Phelan; B P Chapman
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Review 4.  Connecting Age-Related Biological Decline to Frailty and Late-Life Vulnerability.

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Review 6.  Frailty in heart failure.

Authors:  Izabella Uchmanowicz; Maria Łoboz-Rudnicka; Przemysław Szeląg; Beata Jankowska-Polańska; Krystyna Łoboz-Grudzień
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7.  Moving Frailty Toward Clinical Practice: NIA Intramural Frailty Science Symposium Summary.

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8.  The Paulson-Lichtenberg Frailty Index: evidence for a self-report measure of frailty.

Authors:  Daniel Paulson; Peter A Lichtenberg
Journal:  Aging Ment Health       Date:  2014-12-24       Impact factor: 3.658

Review 9.  Regulation of Cardiac Autonomic Nervous System Control across Frailty Statuses: A Systematic Review.

Authors:  Saman Parvaneh; Carol L Howe; Nima Toosizadeh; Bahareh Honarvar; Marvin J Slepian; Mindy Fain; Jane Mohler; Bijan Najafi
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10.  Resting heart rate, heart rate variability and functional decline in old age.

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Journal:  CMAJ       Date:  2015-08-31       Impact factor: 8.262

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